ZEOLITES WITH IMPROVED COMPATIBILITY
The invention relates to modified zeolite crystals comprising zeolite crystals and from 0.5% to 20%, by weight, endpoints included, relative to the total weight of modified zeolite crystals, of at least one polymeric compatibilizer, more particularly a functional polyolefin. The invention also relates to the use of the modified zeolite crystals according to the invention as a filler in a polymer matrix, for example for the preparation of composite materials.
1 . Modified zeolite crystals comprising zeolite crystals and from 0.5% to 20% by weight, endpoints included, relative to the total weight of modified zeolite crystals, of at least one polymeric compatibilizer.
2 . The modified crystals as claimed in claim 1 , wherein the zeolite crystals are zeolitic adsorbent materials selected from LTA zeolites, FAU zeolites, MFI zeolites, P zeolites, SOD zeolites, MOR zeolites, CHA zeolites, HEU zeolites, and mixtures of two or more thereof in any proportions.
3 . The modified crystals as claimed in claim 1 , wherein the zeolite crystals have a number-average size of between 0.05 μm and 20 μm.
4 . The modified crystals as claimed in claim 1 , wherein the compatibilizer has a melt flow index of more than 250 g/10 min, measured according to standard ASTM D1238 (190° C., 2.16 kg).
5 . The modified crystals as claimed in claim 1 , wherein the melting temperature of said compatibilizer is less than 150° C.
6 . The modified crystals as claimed in claim 1 , wherein the compatibilizer is a polymer.
7 . The modified crystals as claimed in claim 1 , wherein the compatibilizer is selected from homopolymers or copolymers of alpha-olefins or diolefins, optionally functionalized with one or more functional groups selected from unsaturated carboxylic or dicarboxylic acid anhydrides and unsaturated epoxides, and copolymers of olefins with functionalized comonomers.
8 . The modified crystals as claimed in claim 1 , having a number-average size of between 0.07 μm and 25 μm.
9 . The use of the modified crystals as claimed in claim 1 as a filler in a polymer matrix.
10 . The use as claimed in claim 9 as fillers in polymer matrices for applications in the fields of double glazing, coating compositions, formulations ready to be polymerized, formulations ready to be crosslinked, and also for applications as a filler in materials having reinforced mechanical properties, flame retardant properties and acoustic properties, and for applications in the electrical and electronics fields, and others.